生物正交化学
生物分子
动力学
催化作用
纳米技术
生物相容性
化学动力学
化学
生化工程
材料科学
生物系统
组合化学
有机化学
点击化学
工程类
物理
量子力学
生物
作者
Eva J. Meeus,Petrus C. M. Laan,Rens Ham,Bas de Bruin,Joost N. H. Reek
标识
DOI:10.1002/chem.202400516
摘要
The field of bioorthogonal chemistry is rapidly growing, presenting successful applications of organic and transition metal-catalysed reactions in cells and living systems (in vivo). The development of such reactions typically proceeds through many iterative steps focused on biocompatibility and fast reaction kinetics to ensure product formation. However, obtaining kinetic data, even under simulated biological (biomimetic) conditions, remains a challenge due to substantial concentrations of salts and biomolecules hampering the use of typically employed solution-phase analytical techniques. In this study, we explored the suitability of gas evolution as a probe to study kinetics under biomimetic conditions. As proof of concept, we show that the progress of two transition metal-catalysed bioorthogonal chemical reactions can be accurately monitored, regardless of the complexity of the medium. As such, we introduce a protocol to gain more insight into the performance of a catalytic system under biomimetic conditions to further progress iterative catalyst development for in vivo applications.
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